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Habitat disturbance and hydrological parameters determine the body size and reproductive strategy of alluvial ground beetles

机译:栖息地扰动和水文参数决定了冲积甲虫的体型和繁殖策略

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Environmental variability is the main driver for the variation of biological characteristics (life-history traits) of species. Therefore, life-history traits are particularly suited to identify mechanistic linkages between environmental variability and species occurrence and can help in explaining ecological patterns. For ground beetles, few studies directly related species traits to environmental variables. This study aims to analyse how life-history traits of alluvial ground beetles are controlled by environmental factors. I expected that the occurrence of species and the occurrence of specific traits are closely related to hydrological and disturbance parameters. Furthermore I expected most of the trait-variation to be explained by a combination of environmental variables, rather than by their isolated effects. Ground beetles were sampled in the year 2005 in floodplain grassland along the Elbe River in Germany. I used redundancy analysis to quantify the effects of hydrological, sediment, and disturbance related parameters on both species occurrence and species traits. I applied variation partitioning to analyse which environmental compartments explain most of the trait variation. Species occurrence and trait variation were both mainly controlled by hydrological and flood disturbance parameters. I could clearly identify reproductive traits and body size as key traits for floodplain ground beetles to cope with the environmental variability. Furthermore, combinations of hydrological, habitat disturbance, habitat type, and species diversity parameters, rather than their isolated effects, explained large parts of ground beetle trait variation. Thus, a main conclusion of this study is that ground beetle occurrence is mainly determined by complex, multi-scale interactions between environmental variability and their life-history traits.
机译:环境可变性是物种生物学特性(生命历史特征)变化的主要驱动力。因此,生命历史特征特别适合于识别环境变异性与物种发生之间的机械联系,并有助于解释生态模式。对于地面甲虫,很少有研究将物种性状与环境变量直接相关。本研究旨在分析冲积地面甲虫的生活史特征如何受环境因素控制。我期望物种的出现和特定性状的出现与水文和干扰参数密切相关。此外,我期望大多数性状变异可以由环境变量的组合来解释,而不是由其孤立的作用来解释。地面甲虫是在2005年在德国易北河沿岸的洪泛草原上取样的。我使用冗余分析来量化水文,沉积物和扰动相关参数对物种发生和物种特征的影响。我应用了变异划分法来分析哪些环境区室可以解释大多数特征变异。物种的发生和性状的变化都主要受水文和洪水干扰参数的控制。我可以清楚地将繁殖特征和体型确定为洪泛平原甲虫应对环境变化的关键特征。此外,水文,生境扰动,生境类型和物种多样性参数的组合,而不是其孤立的影响,解释了地面甲虫性状变异的大部分。因此,这项研究的主要结论是,地面甲虫的发生主要取决于环境变异性及其生活史特征之间复杂,多尺度的相互作用。

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  • 来源
    《ZooKeys》 |2011年第100期|共18页
  • 作者

    Gerisch Michael;

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  • 中图分类 Q05;
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